抄録
Advanced sensing technologies such as remote sensing and sensor networks, important for enhancing land use through soil condition monitoring, are facing issues including high machine learning costs, limited measurement point density, and environmental impact. This study introduces a remote sensing method that offers both direct and wide-area sensing of soil properties using a dispersible, biodegradable cuboid-shaped isotropic metamaterial equipped with a water-soluble Mg-based resonance antenna structure. The symmetrical metal patterns ensure isotropic reflectance within the 1.2-3.6-GHz range, enabling robust sensing even when the metamaterial is dispersed randomly on the soil. The degradation of the Mg antenna in the soil presents a significant reflection reduction from 80% to 20% at a 2.4-GHz resonant frequency on the soil, promoting the feasibility of combination with a simple wireless measurement system. Integration with functional coatings that dissolve in response to specific soil substances such as pH-sensitive hydroxyapatite leads to the development of biodegradable soil remote monitoring sensors, offering precise, sustainable land management.
| 本文言語 | English |
|---|---|
| ページ(範囲) | 27256-27264 |
| ページ数 | 9 |
| ジャーナル | IEEE Sensors Journal |
| 巻 | 24 |
| 号 | 17 |
| DOI | |
| 出版ステータス | Published - 2024 |
UN SDG
この成果は、次の持続可能な開発目標に貢献しています
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SDG 15 陸の豊かさを守ろう
ASJC Scopus subject areas
- 器械工学
- 電子工学および電気工学
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